Drying cabinet

By setting up vertical beams, storage racks and retractable plugs in the storage chamber of the drying cabinet, combined with fixing parts and spring mechanisms, the problem of easy shaking of the partition rack is solved, and the stable fixation of the storage racks and the safe storage of the vessels are achieved.

CN223005226UActive Publication Date: 2025-06-20SUZHOU XINDA MICRO INTELLIGENT EQUIPMENT CO LTD
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Patent Information

Application Number
CN202422204162.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-09
Publication Date
2025-06-20
Estimated Expiration
2034-09-09

AI Technical Summary

Technical Problem

When the existing drying cabinet is actually used, the partition shelf is prone to shake, resulting in damage to the vessels placed inside it.

Method used

A drying cabinet is designed, by setting up vertical beams on the side walls of the storage chamber, and setting up a storage rack and a retractable plug-in between the vertical beams, combining the fixing member and the spring mechanism to achieve stable fixation of the storage rack and the storage frame.

Benefits of technology

Effectively prevent the shaking of the rack and the storage frame between the vertical beams, ensure that the vessels placed inside them are safe and avoid damage. At the same time, through the setting of the fixture, the risk of misoperation causing the storage rack to fall is eliminated.

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Abstract

The utility model relates to the technical field of drying equipment, and discloses a drying cabinet which comprises a cabinet body internally provided with a storage cavity and a cabinet door, vertical beams are oppositely arranged on the opposite side walls of the storage cavity in the height direction of the storage cavity, inserting holes are evenly distributed in the opposite side faces of the vertical beams in the height direction of the vertical beams, and storage racks are arranged between the vertical beams. The storage rack is provided with a plurality of inserting holes, telescopic inserting pieces are arranged on the two sides of the storage rack, the inserting pieces stretch into the corresponding inserting holes to be used for fixing the storage rack, a detachable storage frame is installed on the storage rack through fixing pieces, and the storage frame is installed on the storage rack to be used for limiting the inserting pieces so that the inserting pieces can be kept in the state of stretching into the inserting holes. By means of the structure, the storage frame can be fixedly installed on the storage rack, the storage rack can be fixedly installed between the vertical beams, and compared with the prior art, a storage layer rack formed between the storage rack and the storage frame is stably fixed between the vertical beams and does not shake, so that utensils placed in the storage rack cannot be damaged.
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Description

Technical Field

[0001] The utility model relates to the technical field of drying equipment, and specifically, to a drying cabinet. Background Art

[0002] A drying cabinet is a cabinet that can quickly dry wet objects. For example, a drying cabinet for laboratory use is a drying cabinet for drying and storing utensils used in the laboratory, mainly serving to provide a dry storage environment.

[0003] For example, a drying cabinet for laboratory use disclosed in the patent with the publication number CN220567677U can slide and lap the partition shelves on the shelf fixing plate, and then can adjust the distance between adjacent partition shelves so as to place utensils of different sizes on the partition shelves. However, in actual use, only the two sides of the partition shelf slide and lap on the shelf fixing plate, lacking fixation for the partition shelf. Therefore, the partition shelf is prone to shaking on the shelf fixing plate, resulting in damage to the utensils placed therein. Summary of the Utility Model

[0004] The purpose of the utility model is to provide a drying cabinet to solve the problems raised in the above background art.

[0005] To achieve the above purpose, the utility model provides the following technical solutions:

[0006] A drying cabinet includes a cabinet body with an internal storage cavity and a cabinet door. On the opposite side walls of the storage cavity, vertical beams are relatively provided along the height direction. On the opposite sides of the vertical beams, insertion holes are evenly arranged along the height direction. A storage rack is arranged between the vertical beams. Both sides of the storage rack are provided with telescopic insertion parts. The insertion parts extend into the corresponding insertion holes to fix the storage rack. A detachable storage frame is installed on the storage rack through fixing parts. The storage frame is installed on the storage rack to limit the insertion parts so that they remain in the state of extending into the insertion holes.

[0007] Further, sliding cavities are correspondingly arranged on both sides of the storage rack for the vertical beams. The upper side surface of the storage rack is provided with sliding grooves communicating with the corresponding sliding cavities along the length direction. The insertion part includes a sliding block slidably arranged in the corresponding sliding cavity through a first spring. A plug rod is arranged on the sliding block and extends through the storage rack to the corresponding insertion hole. The first spring is used to drive the plug rod to extend out. The sliding blocks on the same side of the storage rack are connected by a handle located above the storage rack. Both ends of the handle penetrate the corresponding sliding grooves and are connected to the corresponding sliding blocks.

[0008] Further, a notch is provided on the upper side of the storage rack and between the handles. Grooves are provided on the opposite side walls of the notch in the width direction of the storage rack. The storage frame is placed on the storage rack between the handles. The lower end of the storage frame forms a sliding part that slides within the notch. Protrusions that slide within the grooves are provided on both sides of the sliding part. A fixing member is provided on the lower side of the storage rack for fixing the sliding part located within the notch.

[0009] Further, a fixing cavity with an opening facing the notch is provided inside the storage rack. A positioning hole corresponding to the fixing cavity is provided on the sliding part; the fixing member includes a fixing column that slides within the fixing cavity. A fixing rod that penetrates through the storage rack and extends out is provided on the fixing column. A flipping member is hingedly connected to the extending end of the fixing rod. A second spring for pushing the fixing column to extend and snap into the positioning hole is sleeved on the fixing rod located within the fixing cavity. When the flipping member rotates to the horizontal position, it is used to make the fixing column extend, and when the flipping member rotates to the vertical position, it is used to make the fixing column retract.

[0010] Further, a hinge groove for the extending end of the fixing rod to extend into is provided inside the flipping member, and a hinge shaft that penetrates through the fixing rod is provided within the hinge groove.

[0011] Further, a plurality of storage racks are arranged along the height direction of the vertical beam, and storage frames are provided on all the storage racks.

[0012] Further, the vertical beam includes a U-shaped mounting plate. The insertion holes are uniformly distributed on the middle side wall of the mounting plate. Both sides of the mounting plate are bent to form mounting parts, and the mounting parts are fixed to the opposite side walls of the storage cavity by screws.

[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0014] 1. In the present utility model, through the combined setting of the insertion member and the fixing member, the storage frame can be fixedly installed on the storage rack, and the storage rack can be fixedly installed between the vertical beams. In this way, the storage layer formed between the storage rack and the storage frame can be fixedly placed in the storage cavity. Compared with the existing ones, the storage layer formed between the storage rack and the storage frame in the present utility model is stably fixed between the vertical beams and will not shake, resulting in damage to the utensils placed therein.

[0015] 2. In the present utility model, when the storage frame is fixedly installed on the storage rack, the storage rack can be locked, that is, the position of the storage rack cannot be adjusted through the insertion member, preventing the storage rack from falling on the vertical beam due to accidental operation of the insertion member, which affects the use of the storage layer. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic structural diagram of a drying cabinet in the present utility model.

[0017] Figure 2This is a schematic structural diagram of the drying cabinet of the present utility model when the cabinet door is not installed.

[0018] Figure 3 This is a schematic structural diagram of the installation structure of the storage rack and the storage box between the vertical beams of the present utility model.

[0019] Figure 4 This is a schematic structural diagram of the storage rack of the present utility model.

[0020] Figure 5 This is a schematic cross-sectional view of the storage rack of the present utility model.

[0021] Figure 6 This is a schematic structural diagram of the storage box of the present utility model.

[0022] The meanings of the reference numerals in the figure are as follows: 100, cabinet body; 110, cabinet door; 201, storage cavity; 210, vertical beam; 220, storage rack; 230, storage box; 300, mounting plate; 301, insertion hole; 302, mounting portion; 401, notch; 402, sliding groove; 403, groove; 410, insertion rod; 420, handle; 501, sliding cavity; 510, sliding block; 520, first spring; 531, fixed cavity; 540, fixed column; 541, fixed rod; 550, flipping member; 551, hinge groove; 560, second spring; 610, sliding portion; 611, convex block; 612, positioning hole. Detailed implementation manners

[0023] To further understand the content of the present utility model, the present utility model will be described in detail with reference to the accompanying drawings and embodiments. It should be understood that the embodiments are only for explaining the present utility model and not for limiting it.

[0024] The following combines the attached Figures 1-6 A further detailed description will be given to this embodiment.

[0025] Please refer to Figures 1-6, A drying cabinet in this embodiment includes a cabinet body 100 with an internal storage cavity 201 and a cabinet door 110. Among them, the storage cavity 201 is arranged with its opening facing the front side of the cabinet body 100, and the cabinet door 110 is installed at the opening of the storage cavity 201 in an openable and closable manner through an existing structure; the drying cabinet in this embodiment further includes an air inlet system and a heating system. Among them, the air inlet system, the heating system, and the cabinet body 100 can adopt the structure disclosed in Chinese Patent with the publication number CN213778406U. An equipment cavity is formed above the storage cavity 201 inside the cabinet body 100, and a wind guiding channel is formed at the rear side of the cabinet body 100. An air inlet communicating with the storage cavity 201 is arranged at the bottom of the wind guiding channel, and an air outlet communicating with the outside is arranged above the storage cavity 201 (not shown in the figure). The air inlet system and the heating system are installed in the equipment cavity. Thus, the air inlet system can heat the outside air through the heating system and then transport it to the storage cavity 201 through the wind guiding channel and the air outlet, and flow upward in the storage cavity 201 and then be discharged through the air outlet, so as to dry the utensils to be dried in the storage cavity 201;

[0026] Combined with Figures 1-3 As shown, in this embodiment, vertical beams 210 are relatively arranged along the height direction on the opposite side walls of the storage cavity 201. Insertion holes 301 are evenly arranged along the height direction on the opposite side surfaces of the vertical beams 210. A storage rack 220 is arranged between the vertical beams 210. Telescopic insertion parts are arranged on both sides of the storage rack 220, and the insertion parts extend into the corresponding insertion holes 301 for fixing the storage rack 220. A detachable storage frame 230 is installed on the storage rack 220 through a fixing part, and the storage frame 230 is installed on the storage rack 220 to limit the insertion parts so that they remain in the state of extending into the insertion holes 301.

[0027] In this embodiment, combined with Figure 3 As shown, the vertical beam 210 includes a U-shaped mounting plate 300. The insertion holes 301 are evenly arranged on the middle side wall of the mounting plate 300. Both sides of the mounting plate 300 are bent to form mounting parts 302, and the mounting parts 302 are fixed to the opposite side walls of the storage cavity 201 by screws. Thus, the installation of the vertical beam 210 on the opposite side walls of the storage cavity 201 is realized;

[0028] Among them, a plurality of storage racks 220 are arranged along the height direction of the vertical beams 210, and storage frames 230 are arranged on all the storage racks 220. Two vertical beams 210 on the same side of the storage cavity 201 are arranged in parallel, so as to improve the stability of the installation of the storage rack 220 and the storage frame 230 thereon;

[0029] In this embodiment, through the cooperative setting of the plug-in part and the plug hole 301, the telescopic movement of the plug-in part enables it to be inserted into the plug holes 301 at different positions, so that the storage rack 220 can be adjusted in position along the vertical beam 210, thereby facilitating the adjustment of the distance between adjacent storage racks 220.

[0030] Among them, the storage frame 230 is used for placing the utensils to be dried. Through the setting of the fixing parts, the storage frame 230 can be fixedly installed on the storage rack 220. Combining with the fixed placement of the storage rack 220 on the vertical beam 210, in this way, the storage shelf formed by the storage rack 220 and the storage frame 230 is fixedly placed in the storage cavity 201. Compared with the existing ones, in this embodiment, the storage shelf formed by the storage rack 220 and the storage frame 230 is stably fixed between the vertical beams 210 and will not shake, causing damage to the utensils placed therein.

[0031] In this embodiment, the middle part of the storage rack 220 is hollow, and the side walls of the storage frame 230 are evenly provided with air grooves to make it in the shape of a leaky basket. Thus, the hot air rising in the storage cavity 201 can pass through the storage shelf, preferably drying the utensils to be dried placed thereon.

[0032] In this embodiment, when the storage frame 230 is fixedly installed on the storage rack 220, it can limit the plug-in part to keep it in the state of extending into the plug hole 301. That is, when the storage frame 230 is installed on the storage rack 220, it can lock the storage rack 220, that is, the position of the storage rack 220 cannot be adjusted through the plug-in part, preventing the storage rack 220 from falling on the vertical beam 210 due to accidental operation of the plug-in part and affecting the use of the storage shelf.

[0033] Combined with Figures 4-5 As shown in the figure, in this embodiment, sliding cavities 501 are provided on both sides of the storage rack 220 corresponding to the vertical beam 210, and sliding grooves 402 communicating with the corresponding sliding cavities 501 are provided on the upper side surface of the storage rack 220 along its length direction; the plug-in part includes sliding blocks 510 slidably arranged in the corresponding sliding cavities 501 through first springs 520. Plug rods 410 are provided on the sliding blocks 510 and penetrate through the storage rack 220 and extend into the corresponding plug holes 301. The first springs 520 are used to drive the plug rods 410 to extend out. The sliding blocks 510 on the same side of the storage rack 220 are connected by a handle 420 located above the storage rack 220. Both ends of the handle 420 penetrate through the corresponding sliding grooves 402 and are connected to the corresponding sliding blocks 510.

[0034] Through the structure of this embodiment, in actual use, the first spring 520 is used to push the sliding block 510 to drive the plug-in rod 410 to extend and insert it into the corresponding plug-in hole 301, so that the rack 220 can be fixedly installed between the vertical beams 210; when the position of the rack 220 needs to be adjusted, the operator drives the handles 420 to move closer to each other, which can drive the sliding block 510 to move into the sliding cavity 501, drive the plug-in rod 410 to retract into the sliding cavity 501, so that it is disengaged from the plug-in hole 301 to release the fixation of the rack 220. At this time, after the rack 220 is moved to the desired position, the plug-in rod 410 is aligned with the corresponding plug-in hole 301, so that the first spring 520 drives the plug-in rod 410 to extend into the plug-in hole 301, and the rack 220 can be fixed.

[0035] In this embodiment, a notch 401 is provided on the upper side of the storage rack 220 and located between the handles 420, and grooves 403 are provided on the side walls opposite to the notch 401 along the width direction of the storage rack 220. The storage frame 230 is placed on the storage rack 220 between the handles 420, and a sliding portion 610 is formed at the lower end of the storage frame 230 to slide in the notch 401. Both sides of the sliding portion 610 are provided with protrusions 611 that slide in the groove 403. A fixing member is provided on the lower side of the storage rack 220 to fix the sliding portion 610 located in the notch 401.

[0036] In this embodiment, by setting the notch 401, the groove 403, the sliding part 610 and the protrusion 611, in actual use, the protrusions 611 on both sides of the sliding part 610 on the storage frame 230 are aligned with the corresponding grooves 403, and the sliding part 610 is slid into the notch 401, so that the storage frame 230 can be slidably installed on the storage rack 220. At this time, the two sides of the storage frame 230 can block the handles 420, so that the two handles 420 cannot move close to each other, thereby limiting the position of the connector;

[0037] The fixing member is provided so that it can be slidably inserted into the sliding portion 610 in the slot 401 for fixing, thereby fixing the storage frame 230 to achieve fixing on the storage rack 220 .

[0038] In this embodiment, a fixing cavity 531 with an opening facing the notch 401 is provided in the storage rack 220, and a positioning hole 612 corresponding to the fixing cavity 531 is provided on the sliding part 610; the fixing member includes a fixing column 540 slidably disposed in the fixing cavity 531, a fixing rod 541 extending through the storage rack 220 is provided on the fixing column 540, a turning member 550 is hingedly connected to the extending end of the fixing rod 541, a second spring 560 for pushing the fixing column 540 to extend and engage with the positioning hole 612 is sleeved on the fixing rod 541 located in the fixing cavity 531, the turning member 550 is used to make the fixing column 540 extend when turned to the horizontal, and the turning member 550 is used to make the fixing column 540 retract when turned to the vertical.

[0039] In this embodiment, a hinge groove 551 for the extending end of the fixing rod 541 to extend into is provided in the turning member 550, and a hinge shaft penetrating the fixing rod 541 is provided in the hinge groove 551. Thus, the hinge connection of the turning member 550 to the extending end of the fixing rod 541 is preferably realized;

[0040] Through the structure in this embodiment, when in actual use, when the turning member 550 is turned to the horizontal, the second spring 560 pushes the fixing column 540 to move, so that the turning member 550 is horizontally abutted against the lower side wall of the storage rack 220. At this time, the fixing column 540 extends out of the fixing cavity 531 and extends into the positioning hole 612, thereby fixing the sliding part 610; wherein, both ends of the turning member 550 have a certain distance from the extending end of the fixing rod 541. Thus, one end of the turning member 550 forms an abutting part, and the other end forms a turning part. When the turning member 550 is driven to turn to the vertical through the turning part, at this time, the abutting part abuts against the lower side wall of the storage rack 220, driving the fixing column 540 to retract into the fixing cavity 531 and disengaging it from the positioning hole 612 to release the fixing of the sliding part 610. That is, by driving the turning member 550 to turn through the turning part, the fixing and release of the storage frame 230 on the storage rack 220 can be realized, and the operation is simple and convenient;

[0041] It should be noted that when the storage frame 230 is slidably installed on the storage rack 220 and its side wall abuts against the rear side wall of the storage cavity 201, the positioning hole 612 can be kept opposite to the fixing cavity 531, thereby facilitating the fixing column 540 to extend into or out of the positioning hole 612.

[0042] Working principle: First, according to the size of the vessel to be dried, adjust the distance between adjacent storage racks 220. After the adjustment is completed, rotate the flipping member 550 to the vertical position. At this time, align the bumps 611 on both sides of the sliding portion 610 on the storage frame 230 with the corresponding grooves 403, and slide the sliding portion 610 into the notch 401 so that the storage frame 230 is slidably installed on the storage rack 220. Then, rotate the flipping member 550 to the horizontal position, insert the fixed column 540 into the positioning hole 612 to fix the storage frame 230. Then, place the vessel to be dried in the storage frame 230, close the cabinet door 110, and start the air inlet system and the heating system to dry the vessels in the storage cavity 201.

[0043] In summary, the above are only the preferred embodiments of the present invention. All equivalent changes and modifications made according to the scope of the patent application of the present invention shall fall within the scope of the patent of the present invention.

Claims

1. A drying cabinet, comprising a cabinet body (100) with a material cavity (201) disposed therein and a cabinet door (110), characterized in that: Vertical beams (210) are arranged on opposite side walls of the storage cavity (201) along the height direction thereof, and plug holes (301) are evenly distributed on opposite side surfaces of the vertical beams (210) along the height direction thereof. A storage rack (220) is arranged between the vertical beams (210), and retractable plug-in components are arranged on both sides of the storage rack (220), and the plug-in components extend into corresponding plug-in holes (301) for fixing the storage rack (220). A detachable storage frame (230) is installed on the storage rack (220) via a fixing component, and the storage frame (230) is installed on the storage rack (220) for limiting the position of the plug-in components so that the plug-in components remain in a state of extending into the plug-in holes (301).

2. A drying cabinet according to claim 1, characterized in that: The vertical beams (210) on both sides of the storage rack (220) are provided with sliding cavities (501), and the upper side surface of the storage rack (220) is provided with sliding grooves (402) communicating with the corresponding sliding cavities (501) along its length direction; the plug-in component comprises a sliding block (510) slidably arranged in the corresponding sliding cavity (501) through a first spring (520), and the sliding block (510) is provided with a plug-in rod (410) penetrating the storage rack (220) and extending into the corresponding plug-in hole (301); the first spring (520) is used to drive the plug-in rod (410) to extend; the sliding blocks (510) on the same side of the storage rack (220) are connected through a handle (420) located above the storage rack (220), and both ends of the handle (420) penetrate the corresponding sliding groove (402) and are connected to the corresponding sliding block (510).

3. A drying cabinet according to claim 2, characterized in that: A notch (401) is provided on the upper side of the storage rack (220) and between the handles (420); grooves (403) are provided on the side walls opposite to the notch (401) along the width direction of the storage rack (220); a storage frame (230) is placed on the storage rack (220) between the handles (420); a sliding portion (610) is formed at the lower end of the storage frame (230) and is located in the notch (401) and is slidable; protrusions (611) are provided on both sides of the sliding portion (610) and are located in the groove (403); and a fixing member is provided on the lower side of the storage rack (220) and is used to fix the sliding portion (610) located in the notch (401).

4. A drying cabinet according to claim 3, characterized in that: A fixing cavity (531) with an opening facing the notch (401) is provided in the storage rack (220), and a positioning hole (612) is provided on the sliding portion (610) corresponding to the fixing cavity (531); the fixing member comprises a fixing column (540) slidably arranged in the fixing cavity (531), a fixing rod (541) penetrating the storage rack (220) and extending out is provided on the fixing column (540), a flip member (550) is hingedly connected to the extending end of the fixing rod (541), a second spring (560) for pushing the fixing column (540) to extend out and snap into the positioning hole (612) is sleeved on the fixing rod (541) located in the fixing cavity (531), and the flip member (550) is used to extend the fixing column (540) when it is rotated to the horizontal position, and is used to retract the fixing column (540) when it is rotated to the vertical position.

5. A drying cabinet according to claim 4, characterized in that: A hinge groove (551) for the extended end of the fixing rod (541) to extend into is provided in the flip member (550), and a hinge shaft penetrating the fixing rod (541) is provided in the hinge groove (551).

6. A drying cabinet according to claim 1, characterized in that: A plurality of storage racks (220) are arranged along the height direction of the vertical beam (210), and each storage rack (220) is provided with a storage frame (230).

7. A drying cabinet according to claim 1, characterized in that: The vertical beam (210) comprises a U-shaped mounting plate (300), the plug holes (301) are evenly distributed on the middle side wall of the mounting plate (300), both sides of the mounting plate (300) are bent to form mounting portions (302), and the mounting portions (302) are fixed to the opposite side walls of the storage cavity (201) by means of screws.

Citation Information

Patent Citations

  • Drying cabinet

    CN213778406U

  • Drying cabinet for laboratory

    CN220567677U